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Life Estimation and Creep Damage Quantification of Service Exposed Reformer Tube

机译:在役重整管的使用寿命估算和蠕变损伤量化

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This paper deals with evaluation of creep damage of ~11 years service exposed primary hydrogen reformer tube made of HP-40 grade of steel in a petrochemical industry, which has been carried out in terms of Kachanav's continuum damage mechanics (CDM) model (K-model) and Bogdanoff model (B-model) based on Markov process. Residual life of the tubes was estimated based on hot tensile, conventional creep deformation under identical test conditions, optical microscopy and fractography. Accumulation of damage due to creep has been quantified through microstructural studies. The as received tubes did not reveal any degradation in the material like creep cavitation or voids, but there was indeed loss of tensile strength from room temperature to 870℃ for the bottom portion of the tube due to ageing and overheating. Scatter in creep deformation behaviour of the material is probably due to variation in mode of fracture and scatter in voids. From statistical point of view, Weibull distribution pattern for analysing probability of rupture due to void area shifts with increase in true strain towards the higher population of void. The estimation of mean time to reach a specific damage state from K- model and B-model is in close agreement with that of experimental data and can describe the sudden changes of the creep damage in the tertiary region as well. A remnant life of >10 years is estimated at the operating stress-temperature conditions of the top as well as bottom portion of the tube.
机译:本文采用Kachanav的连续介质力学(CDM)模型(K-模型)和基于Markov过程的Bogdanoff模型(B模型)。根据热拉伸,在相同测试条件下的常规蠕变变形,光学显微镜和分形术,估计管的剩余寿命。由于蠕变造成的破坏累积已通过微观结构研究进行了量化。原来的管子没有显示出材料的任何退化,如蠕变气蚀或空隙,但实际上,由于老化和过热,管子的底部从室温到870℃的拉伸强度实际上已经损失了。材料蠕变变形行为的散布可能是由于断裂模式的变化和空隙中的散布。从统计学的角度来看,用于分析由于空隙面积引起的破裂概率的威布尔分布模式会随着真实应变的增加而向更大的空隙数量移动。从K模型和B模型估计达到特定破坏状态的平均时间与实验数据非常一致,并且也可以描述第三区域蠕变破坏的突然变化。在管子顶部和底部的工作应力-温度条件下,估计的剩余寿命> 10年。

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